Properties of some nonlinear Schrodinger equations motivated through information theory
arXiv:0902.3044
Abstract
We update our understanding of nonlinear Schrodinger equations motivated through information theory. In particular we show that a deformation of the basic nonlinear equation leads to a perturbative increase in the energy of a system, thus favouring the simplest case. Furthermore the energy minimisation criterion is shown to be equivalent, at leading order, to an uncertainty maximisation argument. The special value for the interpolation parameter, where leading order energy shifts vanish, implies the preservation of existing supersymmetry in nonlinearised supersymmetric quantum mechanics. Physically, might be encoding relativistic effects.
5 pages. Presented at the DICE 2008 workshop in Italy